TLS Online TPP Program

#Question id: 14136


Which of the following statement is incorrect about global alignment? 
(A) Global alignment is based on the Needleman–Wunsch algorithm.
(B) In Global alignment algorithm, an optimal alignment is obtained over the entire lengths of the two sequences.
(C) It is only suitable for aligning two closely related sequences that are of the same length.
(D) GAP is a web-based pairwise global alignment program.

#Part-A Aptitude & General Biotechnology
  1. Only A
  2. A and B
  3. C and D
  4. None of the above
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TLS Online TPP Program

#Question id: 11060

#Part-B Specialized Branches in Biotechnology

A healthy, 25-year-old medical student participates in a 10-km charity run for the American Heart Association. Which of the following muscles does the student use (contract) during expiration?

TLS Online TPP Program

#Question id: 11061

#Part-B Specialized Branches in Biotechnology

The pleural pressure of a normal 56-year-old woman is approximately −5 cm H2O during resting conditions immediately before inspiration (i.e., at functional residual capacity). What is the pleural pressure (in cm H2O) during inspiration?

TLS Online TPP Program

#Question id: 11062

#Part-B Specialized Branches in Biotechnology

The alveolar pressure of a normal 77-year-old woman is approximately 1 cm H2O during expiration. What is the alveolar pressure during inspiration (in cm H2O)?

TLS Online TPP Program

#Question id: 11063

#Part-B Specialized Branches in Biotechnology

A man inspires 1000 ml from a spirometer. The intrapleural pressure was −4 cm H2O before inspiration and −12 cm H2O the end of inspiration. What is the compliance of the lungs?

TLS Online TPP Program

#Question id: 11065

#Part-B Specialized Branches in Biotechnology

A liquid-ventilated lung compared to a gas-ventilated lung

TLS Online TPP Program

#Question id: 11066

#Part-B Specialized Branches in Biotechnology

A 22-year-old woman has a pulmonary compliance of 0.2 L/cm H2O and a pleural pressure of −4 cm H2O. What is the pleural pressure (in cm H2O) when the woman inhales 1.0 L of air?